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41.
The Role of Disaggregation of Asset Values in Flood Loss Estimation: A Comparison of Different Modeling Approaches at the Mulde River,Germany 总被引:3,自引:0,他引:3
Anja Wünsch Ulrich Herrmann Heidi Kreibich Annegret H. Thieken 《Environmental management》2009,44(3):524-541
In loss estimation there is a spatial mismatch of hazard data that are commonly modeled on an explicit raster level and exposure
data that are often available only for aggregated administrative units. Usually disaggregation methods that use ancillary
information to distribute lumped exposure data in a finer spatial resolution help to bridge this gap. However, the actual
influence of different mapping techniques and ancillary data on the final loss estimation has not been analyzed yet. In this
paper three methods are applied to disaggregate residential building assets using two kinds of land use/land cover (LULC)
data. The resulting disaggregated assets are validated and compared using census data of the residential building number on
the community and constituency level. In addition, the disaggregated assets are taken to estimate residential building losses
due to the flood in August 2002 in 21 municipalities on the River Mulde in Saxony, Germany. Losses are calculated with the
help of four loss models. In general, disaggregation helps to decrease the error variance within the loss estimation. It must,
however, be stated that the application of sophisticated disaggregation methods does not lead to significant improvements
compared to the straightforward binary method. Therefore more effort should instead be put into the provision of high-resolution
LULC data. Finally, the remaining uncertainties in loss estimation are high and demand further improvements in all modeling
aspects. 相似文献
42.
常规施肥条件下农田不同途径氮素损失的原位研究:以长江中下游地区夏玉米季为例 总被引:4,自引:1,他引:3
为了解农田常规施肥条件下的不同途径氮素损失特征,本文通过田间原位试验同步研究了长江中下游地区夏玉米生长季氮肥施用后的农田N2O排放、NH3挥发、氮渗漏和地表径流的变化.结果表明,在复合肥为基肥,尿素为追肥,基追肥氮素水平均为150 kg·hm-2的条件下,整个玉米生长季N2O排放系数为3.3%,NH3挥发损失率为10.2%,氮渗漏和地表径流损失率分别为11.2%和5.1%.此外,基肥施用以氮素渗漏损失为主,而追肥氮素损失以氨挥发和渗漏为主,表明不同途径化肥氮素损失主要受氮肥品种影响,玉米季追肥可改用低氨挥发氮肥品种以减少氮素损失. 相似文献
43.
44.
基于物质流分析的钾素流动与循环研究 总被引:2,自引:0,他引:2
我国钾矿资源匮乏,自给率低,主要的使用和流动过程集中在种植业活动中.本研究利用物质流分析方法对2009年我国种植业生产和消费过程中钾素的流动和循环过程进行了解析.结果表明,农田土壤钾素平均亏损量达到50.4 kg·hm-2,大量钾素由陆生生态系统进入水生生态系统,造成资源流失.伴随降雨径流进入水环境的钾素达231.2万t·a-1,占当年化学钾肥施用量的40.97%.生活污水排放是钾素进入水体的另一主要途径,城市和农村区域的年排放量分别为67.1万t·a-1和54.7万t·a-1,占进入水环境钾素总量的19.00%和15.50%.其中通过城市污水处理厂排放进入地表水环境中钾素为50.5万t·a-1,占城市区域排放总量的75.25%. 相似文献
45.
46.
沂蒙山区典型小流域特殊降雨的磷素输出特征 总被引:11,自引:6,他引:5
为揭示沂蒙山区不同降雨条件下的磷素流失规律,对当地孟良崮小流域2010年13场自然降雨径流量及磷素浓度的动态过程进行实地监测,研究了年内产生有效径流的首场和最大强度2场特殊降雨的径流、磷素输出负荷、初期冲刷效应及径流量同磷素负荷之间的关系.结果表明,首场降雨径流中溶解态有机磷(DOP)、溶解态无机磷(DIP)、溶解态全磷(DP)、颗粒态全磷(PP)和总磷(TP)浓度明显高于最大强度降雨,而其输出负荷分别为最大强度降雨的168%、54%、71%、48%和54%;2场降雨对小流域磷素年输出负荷有重要影响,DOP、DIP、DP、PP和TP的输出总量分别占整个雨季输出的48%、81%、70%、87%和81%,其中DIP占DP流失的77%,PP占TP流失的71%;2场降雨均存在污染物的初期冲刷效应,最大强度降雨的初期冲刷效应较首场降雨强烈;2场降雨的各磷素累积输出负荷同累积径流量之间均呈线性关系,且拟合度较好,但首场降雨各形态磷素直线方程的斜率均大于最大强度降雨.根据气象预报尽量减少在特殊降雨期间翻耕、施肥等农事活动,以及有针对性地建立沟渠、池塘等截污措施减少初期冲刷效应,是降低农业非点源污染的有效途径. 相似文献
47.
高效木薯渣分解复合菌群RXS的构建及其发酵特性研究 总被引:1,自引:0,他引:1
从富含腐烂纤维质的环境中取样,通过以木薯渣及滤纸为碳源的蛋白胨纤维素培养基不断地富集培养,构建了一组高效稳定的纤维质分解复合菌群.考察了该复合菌群对不同纤维质底物的分解性能及其在木薯渣水解过程中主要参数的变化.研究发现该复合菌群对滤纸、脱脂棉、微晶纤维素、麦秸秆和木薯渣等原料均能够进行有效的降解.在该复合菌群应用于木薯渣的水解过程中,监测发现纤维素酶、半纤维素酶、果胶酶等关键酶的酶活力分别在第2~3 d达到最大值34.4、90.5和15.8U;经过10 d的发酵后,木薯渣中的纤维素、半纤维素及木质素分别降解了79.8%、85.9%和19.4%,且木薯渣的失重高达61.5%;此外,代谢产物主要是乙酸、丁酸、己酸和甘油;而溶解性COD、总糖和总挥发酸的变化表明第2 d时木薯渣的水解率最高.上述结果表明,该复合菌群能够有效地水解木薯燃料酒精生产过程中的废弃物木薯渣,并有望用于木薯渣高效沼气发酵的前处理中. 相似文献
48.
不同雨强条件下太湖流域典型蔬菜地土壤磷素的径流特征 总被引:28,自引:4,他引:24
以太湖流域典型区域无锡市近郊区鸿声镇的蔬菜地为研究对象,采用人工模拟降雨的方法,通过野外径流小区试验,研究了不同雨强对菜地土壤磷素径流流失的影响.结果表明,初始产流时间随雨强的增大呈幂函数减小(R2=0.99),径流量在雨强较小时,缓慢上升,但随着雨强的增大急剧上升,在雨强0.83、1.17和1.67 mm·min-1时,总磷(TP)和颗粒态磷(PP)都表现为初始流失浓度较高,随降雨历时延长略有下降,最终趋于稳定,而在大雨强2.50 mm·min-1时,TP和PP呈现波浪式起伏,没有明显的变化趋势;在整个降雨-径流过程中,溶解态磷(DP)变化比较平缓,占TP的比例为20%~32%,而PP占TP的比例为68%~80%,其变化规律与TP相一致,由此可见,PP是土壤磷素流失的主要形态;通过对比不同雨强下不同形态磷素的流失率,发现TP的流失率,大雨强2.50 mm·min-1是小雨强0.83 mm·min-1的20倍,而DP的流失率,却是33倍,这表明随着雨强的增加,加速土壤PP流失的同时,也大大促进了DP的流失,主要原因是降雨前表施磷肥,使得磷肥中大量的无机态磷溶解释放到水环境中,增加了DP的流失,从而会加重受纳水体富营养化的程度. 相似文献
49.
Irnazaquin applied in legume crops has a long residual time in soil, which often impacts safety of the susceptible crops. To increase safety of imazaquin application, two composted litters, bovine manure (BM) and chicken manure (CM), were used to determine their effects on imazaquin environmental behavior by incorporating each kind of manure into the tested sandy loam soil at 10% (w/w). The degradation of imazaquin in BM- and CM-amended soil was about 2.4 and 1.5 times, respectively, faster than that in unamended soil. The half-lives of imazaquin in BM-amended soil varied between 6.7 and 15.4 d over the temperature range of 20 to 40℃, and the degradation rate constant (k) increased by a factor of about 1.5 for every 10℃ change. Higher mix ratio did not significantly increase the degradation, and the optimal active degradation of imazaquin was observed approximately at the mix ratio of 10:1 of soil to BM. The different moisture levels had negligible effect on imazaquin degradation. In both unamended and BM-amended treatments, two metabolites were observed at 5, 10 and 30 d after treatment. One metabolite at retention time (RT) of 8.4 rain was identified as 2-(4- hydroxyl-5-oxo-2-imidazolin-2-yl) quinoline acid, originating from the loss of isopropyl group and hydroxylation at the 4-position of imidazolinone ring. The other at RT of 12.9 rain was identified as quinoline-2,3-dicarboxylic anhydride, resulting from detachment of imidazolinone ring and the forming of dicarboxylic anhydride. This finding suggested that the addition of farm litters into soil might be a good management option since it can not only increase soil fertility but also contribute to increase safety of imazaquin application to the following susceptible crops. 相似文献
50.
Assessing field vulnerability to phosphorus loss in Beijing agricultural area
using Revised Field Phosphorus Ranking Scheme 总被引:1,自引:0,他引:1
Guanting Reservoir,one of the drinking water supply sources of Beijing,suffers from water eutrophication.It is mainly supplied by Guishui River.Thus,to investigate the reasons of phosphorus(P)loss and improve the P management strategies in Guishui River watershed are important for the safety of drinking water in this region.In this study,a Revised Field P Ranking Scheme(PRS)was developed to reflect the field vulnerability of P loss at the field scale based on the Field PRS.In this new scheme,six factors are included, and each one was assigned a relative weight and a determination method.The affecting factors were classified into transport factors and source factors,and,the standards of environmental quality on surface water and soil erosion classification and degradation of the China were used in this scheme.By the new scheme,thirty-four fields in the Guishui River were categorized as"low","medium"or"high"potential for P loss into the runoff.The results showed that the P loss risks of orchard and vegetable fields were higher than that of corn and soybean fields.The source factors were the main factors to affect P loss from the study area.In the study area,controlling P input and improving P usage efficiency are critical to decrease P loss.Based on the results,it was suggested that more attention should be paid on the fields of vegetable and orchard since they have extremely high usage rate of P and high soil test of E Compared with P surplus by field measurements,the Revised Field PRS was more suitable for reflecting the characteristics of fields,and had higher potential capacity to identify critical source areas of P loss than PRS. 相似文献